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March 19, 2026Surfaces0 citationsOpen Access

Cyclic Voltammetry-Assisted Electrodeposition of TiO2/PANI Thin Films on Boron-Doped Diamond and Fluorine-Doped Tin Oxide: Effect of Composition on Interfacial and Electrochemical Properties

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RVRobert Josep Villanueva-SilvaUPUlises Páramo-GarcíaRGRicardo García-Alamilla

Key Points

  • The research aims to investigate the impact of composition on the interfacial and electrochemical properties of TiO2/PANI thin films.
  • Electrodeposition of PANI and TiO2/PANI composites using cyclic voltammetry.
  • Utilization of 20 scan cycles in a 0.5 M H2SO4 solution for synthesis.
  • Morphological analysis through optical and scanning electron microscopy to observe surface characteristics.
  • FTIR spectroscopy for identifying functional groups in the composites.
  • Energy-dispersive spectroscopy (EDS) to determine the titanium content across different molar ratios.
  • Characterization confirmed the presence of PANI through redox peaks in voltammograms.
  • FTIR analysis revealed significant bonding interactions between TiO2 and PANI.
  • Morphological analysis showed uniform yet cracked surfaces, affected by varying TiO2 loading levels.
  • Composite electrodes with higher TiO2:PANI ratios displayed increased titanium content, as verified by EDS.

Abstract

This study presents the successful electrodeposition of polyaniline (PANI) and TiO2/PANI composites on boron-doped diamond (BDD) and fluorine-doped tin oxide (FTO) substrates via cyclic voltammetry. Using 20 scan cycles in 0.5 M H2SO4, we synthesized thin films with tailored electrochemical properties. The formation of PANI was confirmed by characteristic redox peaks in the voltammograms, while FTIR spectroscopy identified key functional groups and bonding interactions between TiO2 and PANI. Morphological analysis via optical and scanning electron microscopy revealed uniform but cracked surfaces influenced by TiO2 loading. Composite electrodes with molar ratios of 2:1, 4:1, and 6:1 (TiO2:PANI) were compared, showing increased titanium content with higher ratios, as confirmed by EDS. This work offers a reproducible route for designing modified electrodes with enhanced interfacial properties.

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Cite This Study

Villanueva-Silva et al. (2026) studied this question.

synapsesocial.com/papers/69bb92d1496e729e62980784https://doi.org/10.3390/surfaces9010029
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